15
collaborators
2017–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
5 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Improved rate-distance trade-offs for quantum codes with restricted connectivity | QIP 2024 | regular | ▸Nouédyn Baspin, Venkatesan Guruswami, Ray Li |
| Viderman's algorithm for quantum LDPC codes | QIP 2024 | regular ▸ presenter | Inbal Livni Navon, Mary Wootters |
|
Hierarchical memories: Simulating quantum LDPC codes with local gates ↗
|
TQC 2024 | regular | ▸Christopher Pattison, John Preskill |
Constant-rate low-density parity-check (LDPC) codes are promising candidates for constructing efficient fault-tolerant quantum memories. However, if physical gates are subject to geometric-locality constraints, it becomes challenging to realize these codes. In this paper, we construct a new family of [[N,K,D]] codes, referred to as hierarchical codes, that encode a number of logical qubits K = Omega(N/łog(N)^2). The N-th element of this code family is obtained by concatenating a constant-rate quantum LDPC code with a surface code; nearest-neighbor gates in two dimensions are sufficient to implement the corresponding syndrome-extraction circuit and achieve a threshold. Below threshold the logical failure rate vanishes superpolynomially as a function of the distance D(N). We present a bilayer architecture for implementing the syndrome-extraction circuit, and estimate the logical failure rate for this architecture. Under conservative assumptions, we find that the hierarchical code outperforms the basic encoding where all logical qubits are encoded in the surface code. |
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| Abstract and physical constraints on quantum low-density parity-check (LDPC) codes | QIP 2022 | regular | Nouédyn Baspin |
| Fault-tolerant gates on hypergraph product codes | QIP 2020 | regular | David Poulin |
5 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Hierarchical memories: Simulating quantum LDPC codes with local gates | QIP 2024 | Christopher Pattison, John Preskill |
| Addressing stopping failures for small set flip decoding of hypergraph product codes | QIP 2024 | Lev Stambler, Michael Beverland |
| Numerical study of hypergraph product codes | QIP 2019 | Antoine Grospellier |
| Performance of Hyperbolic Surface Codes | QIP 2017 | Nikolas Breuckmann, Barbara Maria Terhal |
| Diagonal gates in the Clifford hierarchy 10 | QIP 2017 | Shawn Cui, Daniel Gottesman |
Collaborators
| Co-author | Joint talks |
|---|---|
| Christopher Pattison | 2 |
| John Preskill | 2 |
| Nouédyn Baspin | 2 |
| Antoine Grospellier | 1 |
| Barbara Maria Terhal | 1 |
| Daniel Gottesman | 1 |
| David Poulin | 1 |
| Inbal Livni Navon | 1 |
| Lev Stambler | 1 |
| Mary Wootters | 1 |
| Michael Beverland | 1 |
| Nikolas Breuckmann | 1 |
| Ray Li | 1 |
| Shawn Cui | 1 |
| Venkatesan Guruswami | 1 |